Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, Rua Alfredo Allen, 208, 4200-135 Porto, Portugal.
Instituto Nacional de Engenharia Biomédica (INEB), Rua Alfredo Allen, 208, 4200-135 Porto, Portugal.
Int J Mol Sci. 2023 Jan 17;24(3):1827. doi: 10.3390/ijms24031827.
Oral-maxillofacial tumor removal can generate critical bone defects and major problems for patients, causing dysfunctionalities and affecting oral competencies such as mastication, swallowing, and breathing. The association of novel biomaterials and cell therapies in tissue engineering strategies could offer new strategies to promote osteomucosa healing. This study focused on the development of a bioengineered construct loaded with human dental follicle cells (MSCs). To increase the bioconstruct integration to the surrounding tissue, a novel and comprehensive approach was designed combining an injectable biomimetic hydrogel and dental stem cells (hDFMSCs) expressing luminescence/fluorescence for semi-quantitative tissue imaging in live animals. This in vivo model with human MSCs was based on an intramembranous bone regeneration process (IMO). Biologically, the biocomposite based on collagen/nanohydroxyapatite filled with cell-loaded osteopontin-fibrin hydrogel (Coll/nanoHA OPN-Fb) exhibited a high cellular proliferation rate, increased bone extracellular matrix deposition (osteopontin) and high ALP activity, indicating an early osteogenic differentiation. Thus, the presence of human OPN enhanced hDFMSC adhesion, migration, and spatial distribution within the 3D matrix. The developed 3D bioconstruct provided the necessary pro-regenerative effect to modulate the biological response, precisely fitting the bone defect with fine-tuned adjustment to the surrounding original structure and promoting oral osteomucosa tissue regeneration. We were also able to track the cells in vivo and evaluate their behavior (migration, proliferation, and differentiation), providing a glimpse into bone regeneration and helping in the optimization of patient-specific therapies.
口腔颌面肿瘤的切除会给患者带来严重的骨缺损和问题,导致功能障碍,并影响咀嚼、吞咽和呼吸等口腔功能。新型生物材料和细胞疗法在组织工程策略中的结合,可能为促进骨黏膜愈合提供新的策略。本研究专注于开发一种负载人牙囊细胞(MSCs)的生物工程构建体。为了提高生物构建体与周围组织的整合,设计了一种新颖而全面的方法,将可注射仿生水凝胶与表达发光/荧光的牙源性干细胞(hDFMSCs)结合,用于活体动物的半定量组织成像。这种带有人类 MSCs 的体内模型基于膜内骨再生过程(IMO)。从生物学角度来看,基于胶原蛋白/纳米羟基磷灰石填充负载细胞骨桥蛋白纤维蛋白水凝胶的生物复合材料(Coll/nanoHA OPN-Fb)表现出较高的细胞增殖率、增加的骨细胞外基质沉积(骨桥蛋白)和较高的碱性磷酸酶活性,表明早期成骨分化。因此,人 OPN 的存在增强了 hDFMSC 在 3D 基质中的黏附、迁移和空间分布。所开发的 3D 生物构建体提供了必要的促再生效应,以调节生物学反应,精确匹配骨缺损,并通过精细调整与周围原始结构的吻合度,促进口腔骨黏膜组织的再生。我们还能够在体内追踪细胞并评估其行为(迁移、增殖和分化),为骨再生提供了一个初步的了解,并有助于优化针对患者的治疗方法。